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A proposal to rename the hyperthermophile Pyrococcus woesei as Pyrococcus furiosus subsp. woesei

机译:提议将嗜热嗜热球菌重命名为激烈热球菌亚种。沃西

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摘要

Pyrococcus species are hyperthermophilic members of the order Thermococcales, with optimal growth temperatures approaching 100 °C. All species grow heterotrophically and produce H2 or, in the presence of elemental sulfur (S°), H2S. Pyrococcus woesei and P. furiosus were isolated from marine sediments at the same Vulcano Island beach site and share many morphological and physiological characteristics. We report here that the rDNA operons of these strains have identical sequences, including their intergenic spacer regions and part of the 23S rRNA. Both species grow rapidly and produce H2 in the presence of 0.1% maltose and 10–100 µM sodium tungstate in S°-free medium. However,P. woesei shows more extensive autolysis than P. furiosus in the stationary phase. Pyrococcus furiosus and P. woesei share three closely related families of insertion sequences (ISs). A Southern blot performed with IS probes showed extensive colinearity between the genomes of P. woesei and P. furiosus. Cloning and sequencing of ISsthat were in different contexts in P. woesei and P. furiosus revealed that the napA gene in P. woesei is disrupted by a type III IS element, whereas in P. furiosus, this gene is intact. A type I IS element, closely linked to the napA gene, was observed in the same context in both P. furiosus and P. woesei genomes. Our results suggest that the IS elements are implicated in genomic rearrangements and reshuffling in these closely related strains. We propose to rename P. woesei a subspecies of P. furiosus based on their identical rDNA operon sequences, many common IS elements that are shared genomic markers, and the observation that all P. woesei nucleotide sequences deposited in GenBank to date are > 99% identical to P. furiosus sequences.
机译:火球菌属热球菌属的嗜热菌,最佳生长温度接近100°C。所有物种均异养生长并产生H2,或者在元素硫(S °)存在下产生H2S。从同一Vulcano岛海滩站点的海洋沉积物中分离到了Pyrococcus woesei和P. furiosus,它们具有许多形态和生理特征。我们在这里报告,这些菌株的rDNA操纵子具有相同的序列,包括它们的基因间隔区和23S rRNA的一部分。在无S °的培养基中,两种物种在0.1%麦芽糖和10-100 µM钨酸钠存在下均迅速生长并产生H2。但是,P。在固定相中,woesei显示的溶解度比P. furiosus更广泛。激烈热球菌和P. woesei共有三个紧密相关的插入家族 序列(IS)。用IS探针进行的Southern印迹显示 沃氏疟原虫基因组之间的广泛共线性 和P. furiosus。的克隆和测序 P中处于不同上下文中的IS。 woesei和P. furiosus发现 沃氏青霉中的napA基因被破坏 是由III型IS元素引起的,而在P. furiosus中, 这个基因是完整的。类型I IS元素,与 在相同的背景下在两个背景中都观察到了 napA 基因 P。 furiosus P。 woesei 基因组。 我们的结果表明IS元素与基因组有关 这些紧密相关的菌株的重排和改组。我们 建议重命名 P。 woesei 的一个亚种 P。 furiosus 基于相同的rDNA操纵子 序列,许多常见的IS元素都是共享的基因组标记, 以及所有 woesei 核苷酸的观察 迄今存放在GenBank中的序列与> 99%相同 P。 furiosus 序列。

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